• For geometrical nonlinearity, Updated Lagrangian formulations are adopted to derive the tangent stiffness matrix.

    列式求解切线刚度矩阵考虑几何非线性

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  • The precise tangent stiffness matrix of space cable element is derived in this paper by using equilibrium equation.

    本文采用状态平衡方程推导出用超越函数表示的空间单元切线刚度矩阵精确表达式。

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  • The member tangent stiffness matrix whichacounts for various nonlinear influence factors mentioned above is established.

    建立了能反映诸多种非线性影响因素单元切线刚度矩阵

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  • The paper deduces tangent stiffness matrix and set up geometrical nonlinear model of construction control calculation of the cable-stayed bridge.

    推演了索单元的切线刚度矩阵建立了斜拉桥施工控制计算几何非线性模型

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  • The tangent stiffness matrix is obtained from the engineering strain and the principle for determining the limit point and bifurcation point is given.

    工程应变推导出几何非线性切线刚度矩阵给出判断分歧点极限准则,最后用一数值例题说明该方法的分析过程。

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  • The three-node beam element tangent stiffness matrix including the geometric stiffness matrix is developed according to the nonlinear finite element theory.

    进而依据非线性有限元理论推导了结点单元几何刚度矩阵的单元切线刚度矩阵;

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  • An element tangent stiffness equation was derived based on the secant stiffness equation of stability function elements with shear deformation effects considered.

    考虑剪切变形影响稳定函数单元割线刚度方程基础,导出单元切线刚度方程。

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  • Numerical calculation process to obtain the tangent stiffness matrix of structure is deduced and geometric stability of different types of structures are analyzed.

    推导了铰接杆系结构切线刚度矩阵较为简便计算生成过程,便于编程中实现。

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  • As a result, the element tangent stiffness matrix is symmetric and is updated by using the total values of the nodal variables in an incremental solution procedure.

    因而,得到单元切线刚度矩阵对称,此外增量求解过程中用节点变量进行更新。

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  • Then, based on the CR formulation, the internal force vector and tangent stiffness matrix of large rotation and small strain space bar and plane beam element are deduced.

    其次基于CR列式法推导出了旋转应变空间单元平面单元内力矢量切线刚度矩阵

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  • In this paper, the tangent stiffness matrices and the secant stiffness matrices of space trusses are derived with the energy principle in the Total Lagrangian coordinates.

    本文T.L.坐标下利用能量原理,同时导出空间元精确割线刚度矩阵切线刚度矩阵显式

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  • Through improving the displacement loading control method based on the tangent stiffness, this paper has presented displacement loading control method based on the secant stiffness.

    基于切线刚度位移加载控制法基础进行改进,采用基于割线刚度的位移加载控制方法,并绘制相应框图。

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  • According to the generalized normality rule, the tangent stiffness operator of elastoplastic material coupled with damage is derived from the state potential and the dissipative functions.

    广义正交法则状态耗散势函数推导出了耦合损伤弹塑性切线模量。

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  • The final finite-volume discretization equations are derived using the Hamilton principle. Meanwhile the global nodal force vector, mass matrix and tangent stiffness matrix of the cable are obtained.

    根据哈密原理导出了悬索大挠度振动有限体积离散方程,推出整体节点向量质量矩阵切线刚度矩阵。

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  • The bending stiffness of elastoplastic member is product of tangent elastic modulus of material and inertia moment of the section.

    抗弯刚度概念材料切线模量截面对中和轴的惯性矩的乘积

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  • The concrete expression of the unit tangent line stiffness matrix is given.

    讨论桥梁结构分析中常用单元切线刚度矩阵具体表达形式

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  • The concrete expression of the unit tangent line stiffness matrix is given.

    讨论桥梁结构分析中常用单元切线刚度矩阵具体表达形式

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